ArillaFVAzarAARScottB. Effects of anterolateral capsular injury and extra-articular tenodesis on knee kinematics during physical examination. Paper presented at: ORS Annual Meeting; March 30, 2015; Las Vegas, NV.
2.
BellKMArillaFVRahnemai-AzarAAFuFHMusahlVDebskiRE. Novel technique for evaluation of knee function continuously through the range of flexion. J Biomech. 2015;48(13):3728-3731.
3.
BellKMRahnemai-AzarAAIrarrazavalS. The effect of anterolateral capsule injuries and reconstructions on the simulated pivot shift test. Paper presented at: Annual Meeting of the Orthopaedic Research Society; March 1, 2016; Orlando, FL.
4.
ClaesSVereeckeEMaesMVictorJVerdonkPBellemansJ. Anatomy of the anterolateral ligament of the knee. J Anat. 2013;223(4):321-328.
5.
FerrettiAMonacoEFabbriMMaestriBDe CarliAPrevalence and classification of injuries of anterolateral complex in acute anterior cruciate ligament tears. Arthroscopy. 2017;33(1):147-154.
6.
FuFHBrownCAmisA. How to control a grade 3 pivot shift: add a PL bundle; look for and repair a lateral meniscus root tear; biomechanical rationale for extra-articular reconstruction. Paper presented at: 17th ESSKA Congress; May 4, 2016; Barcelona, Spain.
7.
GuentherDBellKMSextonSL. Surface strain in the anterolateral capsule of the knee. Paper presented at: Annual Meeting of the Orthopaedic Research Society; March 5, 2016; Orlando, FL.
8.
GuentherDGriffithCLesniakB. Anterolateral rotatory instability of the knee. Knee Surg Sports Traumatol Arthrosc. 2015;23(10):2909-2917.
9.
GuentherDIrarrazavalSBellKM. Extra-articular tenodesis contributes to knee stability with a combined ACL and capsular injury. Paper presented at: Annual Meeting of the Orthopaedic Research Society; March 5, 2016; Orlando, FL.
10.
GuentherDRahnemai-AzarAABellKM. The anterolateral capsule of the knee behaves like a sheet of fibrous tissue. Am J Sports Med. 2017;45(4):849-855.
11.
HelitoCPDemangeMKHelitoPV. Evaluation of the anterolateral ligament of the knee by means of magnetic resonance examination. Rev Bras Ortop. 2015;50(2):214-219.
12.
HoshinoYAraujoPAhldenM. Quantitative evaluation of the pivot shift by image analysis using the iPad. Knee Surg Sports Traumatol Arthrosc. 2013;21(4):975-980.
13.
InghamSJde CarvalhoRTMartinsCA. Anterolateral ligament anatomy: a comparative anatomical study [published online December28, 2015]. Knee Surg Sports Traumatol Arthrosc.
14.
KittlCEl-DaouHAthwalKK. The role of the anterolateral structures and the ACL in controlling laxity of the intact and ACL-deficient knee. Am J Sports Med. 2016;44(2):345-354.
15.
LopomoNSignorelliCBonanzingaTMarcheggiani MuccioliGMVisaniAZaffagniniS. Quantitative assessment of pivot-shift using inertial sensors. Knee Surg Sports Traumatol Arthrosc. 2012;20(4):713-717.
16.
MarcacciMZaffagniniSGiordanoGIaconoFPrestiML. Anterior cruciate ligament reconstruction associated with extra-articular tenodesis: a prospective clinical and radiographic evaluation with 10- to 13-year follow-up. Am J Sports Med. 2009;37(4):707-714.
17.
MusahlVGriffithCIrrgangJJ. Validation of quantitative measures of rotatory knee laxity. Am J Sports Med. 2016;44(9):2393-2398.
18.
MusahlVRahnemai-AzarAACostelloJ. The influence of meniscal and anterolateral capsular injury on knee laxity in patients with anterior cruciate ligament injuries. Am J Sports Med. 2016;44(12):3126-3131.
19.
Rahnemai-AzarAAMillerRMGuentherD. Structural properties of the anterolateral capsule and iliotibial band of the knee. Am J Sports Med. 2016;44(4):892-897.
20.
SaieghYASueroEMGuentherD. Sectioning the anterolateral ligament did not increase tibiofemoral translation or rotation in an ACL-deficient cadaveric model [published online September16, 2015]. Knee Surg Sports Traumatol Arthrosc.
21.
SchonJMMoatsheGBradyAW. Anatomic anterolateral ligament reconstruction of the knee leads to overconstraint at any fixation angle. Am J Sports Med. 2016;44(10):2546-2556.
22.
SletteELMikulaJDSchonJM. Biomechanical results of lateral extra-articular tenodesis procedures of the knee: a systematic review. Arthroscopy. 2016;32(12):2592-2611.
23.
Sonnery-CottetBSaithnaACavalierM. Anterolateral ligament reconstruction is associated with significantly reduced ACL graft rupture rates at a minimum follow-up of 2 years [published online February2, 2017]. Am J Sports Med. doi:10.1177/0363546516686057.
24.
Sonnery-CottetBThaunatMFreychetBPupimBHMurphyCGClaesS. Outcome of a combined anterior cruciate ligament and anterolateral ligament reconstruction technique with a minimum 2-year follow-up. Am J Sports Med. 2015;43(7):1598-1605.
25.
TheinRBoorman-PadgettJStoneKWickiewiczTLImhauserCWPearleAD. Biomechanical assessment of the anterolateral ligament of the knee: a secondary restraint in simulated tests of the pivot shift and of anterior stability. J Bone Joint Surg Am. 2016;98(11):937-943.
26.
WytrykowskiKSwiderPReinaN. Cadaveric study comparing the biomechanical properties of grafts used for knee anterolateral ligament reconstruction. Arthroscopy. 2016;32(11):2288-2294.
27.
ZaffagniniSLopomoNSignorelliC. Inertial sensors to quantify the pivot shift test in the treatment of anterior cruciate ligament injury. Joints. 2014;2(3):124-129.
28.
ZensMNiemeyerPRuhhammerJ. Length changes of the anterolateral ligament during passive knee motion: a human cadaveric study. Am J Sports Med. 2015;43(10):2545-2552.